4 * Copyright (c) 2003 - 2008 Fabrice Bellard
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, see <http://www.gnu.org/licenses/>.
29 #include <sys/types.h>
31 #include <sys/syscall.h>
32 #include <sys/param.h>
33 #include <sys/sysctl.h>
38 #include "qemu-common.h"
42 static abi_ulong target_brk
;
43 static abi_ulong target_original_brk
;
45 static inline abi_long
get_errno(abi_long ret
)
48 /* XXX need to translate host -> target errnos here */
54 #define target_to_host_bitmask(x, tbl) (x)
56 static inline int is_error(abi_long ret
)
58 return (abi_ulong
)ret
>= (abi_ulong
)(-4096);
61 void target_set_brk(abi_ulong new_brk
)
63 target_original_brk
= target_brk
= HOST_PAGE_ALIGN(new_brk
);
66 /* do_obreak() must return target errnos. */
67 static abi_long
do_obreak(abi_ulong new_brk
)
75 if (new_brk
< target_original_brk
)
76 return -TARGET_EINVAL
;
78 brk_page
= HOST_PAGE_ALIGN(target_brk
);
80 /* If the new brk is less than this, set it and we're done... */
81 if (new_brk
< brk_page
) {
86 /* We need to allocate more memory after the brk... */
87 new_alloc_size
= HOST_PAGE_ALIGN(new_brk
- brk_page
+ 1);
88 mapped_addr
= get_errno(target_mmap(brk_page
, new_alloc_size
,
90 MAP_ANON
|MAP_FIXED
|MAP_PRIVATE
, -1, 0));
92 if (!is_error(mapped_addr
))
100 #if defined(TARGET_I386)
101 static abi_long
do_freebsd_sysarch(CPUX86State
*env
, int op
, abi_ulong parms
)
109 case TARGET_FREEBSD_I386_SET_GSBASE
:
110 case TARGET_FREEBSD_I386_SET_FSBASE
:
111 if (op
== TARGET_FREEBSD_I386_SET_GSBASE
)
113 case TARGET_FREEBSD_AMD64_SET_GSBASE
:
114 case TARGET_FREEBSD_AMD64_SET_FSBASE
:
115 if (op
== TARGET_FREEBSD_AMD64_SET_GSBASE
)
120 if (get_user(val
, parms
, abi_ulong
))
121 return -TARGET_EFAULT
;
122 cpu_x86_load_seg(env
, idx
, 0);
123 env
->segs
[idx
].base
= val
;
126 case TARGET_FREEBSD_I386_GET_GSBASE
:
127 case TARGET_FREEBSD_I386_GET_FSBASE
:
128 if (op
== TARGET_FREEBSD_I386_GET_GSBASE
)
130 case TARGET_FREEBSD_AMD64_GET_GSBASE
:
131 case TARGET_FREEBSD_AMD64_GET_FSBASE
:
132 if (op
== TARGET_FREEBSD_AMD64_GET_GSBASE
)
137 val
= env
->segs
[idx
].base
;
138 if (put_user(val
, parms
, abi_ulong
))
139 return -TARGET_EFAULT
;
141 /* XXX handle the others... */
143 ret
= -TARGET_EINVAL
;
151 static abi_long
do_freebsd_sysarch(void *env
, int op
, abi_ulong parms
)
154 * TARGET_FREEBSD_SPARC_UTRAP_INSTALL,
155 * TARGET_FREEBSD_SPARC_SIGTRAMP_INSTALL
157 return -TARGET_EINVAL
;
163 * XXX this uses the undocumented oidfmt interface to find the kind of
164 * a requested sysctl, see /sys/kern/kern_sysctl.c:sysctl_sysctl_oidfmt()
165 * (this is mostly copied from src/sbin/sysctl/sysctl.c)
168 oidfmt(int *oid
, int len
, char *fmt
, uint32_t *kind
)
170 int qoid
[CTL_MAXNAME
+2];
177 memcpy(qoid
+ 2, oid
, len
* sizeof(int));
180 i
= sysctl(qoid
, len
+ 2, buf
, &j
, 0, 0);
185 *kind
= *(uint32_t *)buf
;
188 strcpy(fmt
, (char *)(buf
+ sizeof(uint32_t)));
193 * try and convert sysctl return data for the target.
194 * XXX doesn't handle CTLTYPE_OPAQUE and CTLTYPE_STRUCT.
196 static int sysctl_oldcvt(void *holdp
, size_t holdlen
, uint32_t kind
)
198 switch (kind
& CTLTYPE
) {
201 *(uint32_t *)holdp
= tswap32(*(uint32_t *)holdp
);
206 *(uint32_t *)holdp
= tswap32(*(long *)holdp
);
210 *(uint64_t *)holdp
= tswap64(*(long *)holdp
);
212 *(uint64_t *)holdp
= tswap64(*(unsigned long *)holdp
);
216 *(uint64_t *)holdp
= tswap64(*(uint64_t *)holdp
);
227 /* XXX this needs to be emulated on non-FreeBSD hosts... */
228 static abi_long
do_freebsd_sysctl(abi_ulong namep
, int32_t namelen
, abi_ulong oldp
,
229 abi_ulong oldlenp
, abi_ulong newp
, abi_ulong newlen
)
232 void *hnamep
, *holdp
, *hnewp
= NULL
;
234 abi_ulong oldlen
= 0;
235 int32_t *snamep
= qemu_malloc(sizeof(int32_t) * namelen
), *p
, *q
, i
;
239 get_user_ual(oldlen
, oldlenp
);
240 if (!(hnamep
= lock_user(VERIFY_READ
, namep
, namelen
, 1)))
241 return -TARGET_EFAULT
;
242 if (newp
&& !(hnewp
= lock_user(VERIFY_READ
, newp
, newlen
, 1)))
243 return -TARGET_EFAULT
;
244 if (!(holdp
= lock_user(VERIFY_WRITE
, oldp
, oldlen
, 0)))
245 return -TARGET_EFAULT
;
247 for (p
= hnamep
, q
= snamep
, i
= 0; i
< namelen
; p
++, i
++)
249 oidfmt(snamep
, namelen
, NULL
, &kind
);
251 ret
= get_errno(sysctl(snamep
, namelen
, holdp
, &holdlen
, hnewp
, newlen
));
253 sysctl_oldcvt(holdp
, holdlen
, kind
);
254 put_user_ual(holdlen
, oldlenp
);
255 unlock_user(hnamep
, namep
, 0);
256 unlock_user(holdp
, oldp
, holdlen
);
258 unlock_user(hnewp
, newp
, 0);
265 * lock_iovec()/unlock_iovec() have a return code of 0 for success where
266 * other lock functions have a return code of 0 for failure.
268 static abi_long
lock_iovec(int type
, struct iovec
*vec
, abi_ulong target_addr
,
271 struct target_iovec
*target_vec
;
275 target_vec
= lock_user(VERIFY_READ
, target_addr
, count
* sizeof(struct target_iovec
), 1);
277 return -TARGET_EFAULT
;
278 for(i
= 0;i
< count
; i
++) {
279 base
= tswapl(target_vec
[i
].iov_base
);
280 vec
[i
].iov_len
= tswapl(target_vec
[i
].iov_len
);
281 if (vec
[i
].iov_len
!= 0) {
282 vec
[i
].iov_base
= lock_user(type
, base
, vec
[i
].iov_len
, copy
);
283 /* Don't check lock_user return value. We must call writev even
284 if a element has invalid base address. */
286 /* zero length pointer is ignored */
287 vec
[i
].iov_base
= NULL
;
290 unlock_user (target_vec
, target_addr
, 0);
294 static abi_long
unlock_iovec(struct iovec
*vec
, abi_ulong target_addr
,
297 struct target_iovec
*target_vec
;
301 target_vec
= lock_user(VERIFY_READ
, target_addr
, count
* sizeof(struct target_iovec
), 1);
303 return -TARGET_EFAULT
;
304 for(i
= 0;i
< count
; i
++) {
305 if (target_vec
[i
].iov_base
) {
306 base
= tswapl(target_vec
[i
].iov_base
);
307 unlock_user(vec
[i
].iov_base
, base
, copy
? vec
[i
].iov_len
: 0);
310 unlock_user (target_vec
, target_addr
, 0);
315 /* do_syscall() should always have a single exit point at the end so
316 that actions, such as logging of syscall results, can be performed.
317 All errnos that do_syscall() returns must be -TARGET_<errcode>. */
318 abi_long
do_freebsd_syscall(void *cpu_env
, int num
, abi_long arg1
,
319 abi_long arg2
, abi_long arg3
, abi_long arg4
,
320 abi_long arg5
, abi_long arg6
, abi_long arg7
,
327 gemu_log("freebsd syscall %d\n", num
);
330 print_freebsd_syscall(num
, arg1
, arg2
, arg3
, arg4
, arg5
, arg6
);
333 case TARGET_FREEBSD_NR_exit
:
337 gdb_exit(cpu_env
, arg1
);
338 /* XXX: should free thread stack and CPU env */
340 ret
= 0; /* avoid warning */
342 case TARGET_FREEBSD_NR_read
:
343 if (!(p
= lock_user(VERIFY_WRITE
, arg2
, arg3
, 0)))
345 ret
= get_errno(read(arg1
, p
, arg3
));
346 unlock_user(p
, arg2
, ret
);
348 case TARGET_FREEBSD_NR_write
:
349 if (!(p
= lock_user(VERIFY_READ
, arg2
, arg3
, 1)))
351 ret
= get_errno(write(arg1
, p
, arg3
));
352 unlock_user(p
, arg2
, 0);
354 case TARGET_FREEBSD_NR_writev
:
359 vec
= alloca(count
* sizeof(struct iovec
));
360 if (lock_iovec(VERIFY_READ
, vec
, arg2
, count
, 1) < 0)
362 ret
= get_errno(writev(arg1
, vec
, count
));
363 unlock_iovec(vec
, arg2
, count
, 0);
366 case TARGET_FREEBSD_NR_open
:
367 if (!(p
= lock_user_string(arg1
)))
369 ret
= get_errno(open(path(p
),
370 target_to_host_bitmask(arg2
, fcntl_flags_tbl
),
372 unlock_user(p
, arg1
, 0);
374 case TARGET_FREEBSD_NR_mmap
:
375 ret
= get_errno(target_mmap(arg1
, arg2
, arg3
,
376 target_to_host_bitmask(arg4
, mmap_flags_tbl
),
380 case TARGET_FREEBSD_NR_mprotect
:
381 ret
= get_errno(target_mprotect(arg1
, arg2
, arg3
));
383 case TARGET_FREEBSD_NR_break
:
384 ret
= do_obreak(arg1
);
387 case TARGET_FREEBSD_NR___sysctl
:
388 ret
= do_freebsd_sysctl(arg1
, arg2
, arg3
, arg4
, arg5
, arg6
);
391 case TARGET_FREEBSD_NR_sysarch
:
392 ret
= do_freebsd_sysarch(cpu_env
, arg1
, arg2
);
394 case TARGET_FREEBSD_NR_syscall
:
395 case TARGET_FREEBSD_NR___syscall
:
396 ret
= do_freebsd_syscall(cpu_env
,arg1
& 0xffff,arg2
,arg3
,arg4
,arg5
,arg6
,arg7
,arg8
,0);
399 ret
= get_errno(syscall(num
, arg1
, arg2
, arg3
, arg4
, arg5
, arg6
, arg7
, arg8
));
404 gemu_log(" = %ld\n", ret
);
407 print_freebsd_syscall_ret(num
, ret
);
410 ret
= -TARGET_EFAULT
;
414 abi_long
do_netbsd_syscall(void *cpu_env
, int num
, abi_long arg1
,
415 abi_long arg2
, abi_long arg3
, abi_long arg4
,
416 abi_long arg5
, abi_long arg6
)
422 gemu_log("netbsd syscall %d\n", num
);
425 print_netbsd_syscall(num
, arg1
, arg2
, arg3
, arg4
, arg5
, arg6
);
428 case TARGET_NETBSD_NR_exit
:
432 gdb_exit(cpu_env
, arg1
);
433 /* XXX: should free thread stack and CPU env */
435 ret
= 0; /* avoid warning */
437 case TARGET_NETBSD_NR_read
:
438 if (!(p
= lock_user(VERIFY_WRITE
, arg2
, arg3
, 0)))
440 ret
= get_errno(read(arg1
, p
, arg3
));
441 unlock_user(p
, arg2
, ret
);
443 case TARGET_NETBSD_NR_write
:
444 if (!(p
= lock_user(VERIFY_READ
, arg2
, arg3
, 1)))
446 ret
= get_errno(write(arg1
, p
, arg3
));
447 unlock_user(p
, arg2
, 0);
449 case TARGET_NETBSD_NR_open
:
450 if (!(p
= lock_user_string(arg1
)))
452 ret
= get_errno(open(path(p
),
453 target_to_host_bitmask(arg2
, fcntl_flags_tbl
),
455 unlock_user(p
, arg1
, 0);
457 case TARGET_NETBSD_NR_mmap
:
458 ret
= get_errno(target_mmap(arg1
, arg2
, arg3
,
459 target_to_host_bitmask(arg4
, mmap_flags_tbl
),
463 case TARGET_NETBSD_NR_mprotect
:
464 ret
= get_errno(target_mprotect(arg1
, arg2
, arg3
));
466 case TARGET_NETBSD_NR_syscall
:
467 case TARGET_NETBSD_NR___syscall
:
468 ret
= do_netbsd_syscall(cpu_env
,arg1
& 0xffff,arg2
,arg3
,arg4
,arg5
,arg6
,0);
471 ret
= syscall(num
, arg1
, arg2
, arg3
, arg4
, arg5
, arg6
);
476 gemu_log(" = %ld\n", ret
);
479 print_netbsd_syscall_ret(num
, ret
);
482 ret
= -TARGET_EFAULT
;
486 abi_long
do_openbsd_syscall(void *cpu_env
, int num
, abi_long arg1
,
487 abi_long arg2
, abi_long arg3
, abi_long arg4
,
488 abi_long arg5
, abi_long arg6
)
494 gemu_log("openbsd syscall %d\n", num
);
497 print_openbsd_syscall(num
, arg1
, arg2
, arg3
, arg4
, arg5
, arg6
);
500 case TARGET_OPENBSD_NR_exit
:
504 gdb_exit(cpu_env
, arg1
);
505 /* XXX: should free thread stack and CPU env */
507 ret
= 0; /* avoid warning */
509 case TARGET_OPENBSD_NR_read
:
510 if (!(p
= lock_user(VERIFY_WRITE
, arg2
, arg3
, 0)))
512 ret
= get_errno(read(arg1
, p
, arg3
));
513 unlock_user(p
, arg2
, ret
);
515 case TARGET_OPENBSD_NR_write
:
516 if (!(p
= lock_user(VERIFY_READ
, arg2
, arg3
, 1)))
518 ret
= get_errno(write(arg1
, p
, arg3
));
519 unlock_user(p
, arg2
, 0);
521 case TARGET_OPENBSD_NR_open
:
522 if (!(p
= lock_user_string(arg1
)))
524 ret
= get_errno(open(path(p
),
525 target_to_host_bitmask(arg2
, fcntl_flags_tbl
),
527 unlock_user(p
, arg1
, 0);
529 case TARGET_OPENBSD_NR_mmap
:
530 ret
= get_errno(target_mmap(arg1
, arg2
, arg3
,
531 target_to_host_bitmask(arg4
, mmap_flags_tbl
),
535 case TARGET_OPENBSD_NR_mprotect
:
536 ret
= get_errno(target_mprotect(arg1
, arg2
, arg3
));
538 case TARGET_OPENBSD_NR_syscall
:
539 case TARGET_OPENBSD_NR___syscall
:
540 ret
= do_openbsd_syscall(cpu_env
,arg1
& 0xffff,arg2
,arg3
,arg4
,arg5
,arg6
,0);
543 ret
= syscall(num
, arg1
, arg2
, arg3
, arg4
, arg5
, arg6
);
548 gemu_log(" = %ld\n", ret
);
551 print_openbsd_syscall_ret(num
, ret
);
554 ret
= -TARGET_EFAULT
;
558 void syscall_init(void)